MEASUREMENTS OF DISTRIBUTION OF INTERPLANETARY DUST
Measurement of distribution of interplanetary dust
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Measurement of distribution of interplanetary dust
Temperature control in interplanetary spacecraft
Geomagnetic and interplanetary magnetic field environment of an earth satellite
Command techniques for the remote control of interplanetary spacecraft
Command techniques for the remote control of interplanetary spacecraft
Interplanetary magnetic fields - mariner ii observations
Interplanetary spacecraft, tracking techniques
The indirect method of the calculus of variations is used to optimize interplanetary round-trip trajectories for the case of a single, central, attracting body. The method of solution makes use of certain partial derivative properties of the Lagrangian multipliers associated with the Mayer formulation of the variational problem. This property of the multipliers allows the construction of mathematical expressions for certain other partial derivatives that must vanish when an optimum round trip has been found. These expressions are developed for the cases of propulsion systems using (1) fixed thrust and specific impulse or (2) variable thrust and constant exhaust jet power. Two numerical examples demonstrate how the analytical results may be applied to the solution of round-trip problems including (1) actual three-dimensional planetary positions and (2) planetocentric maneuvers.
Design parameters for ballistic interplanetary trajectories - mars and venus one-way transfers
Measurement of interplanetary dust by satellites and space probes
Electric propulsion requirements for planetary and interplanetary spacecraft
Planetary aeronomy - role of interplanetary debris in planetary atmospheres - sodium in atmospheres of earth, venus and mars
Low thrust propulsion interplanetary trajectory flight optimization - guidance systems
Thermionic screening of bodies in atmosphere and interplanetary space
Interplanetary ballistic trajectories - requirements for design & selection
Attitude control of interplanetary spacecraft by solar radiation pressure
Chemical propulsion for interplanetary flight and design of spacecraft for braking into orbit around planet mars